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A numerical solution to an inverse unsteady-state heat transfer problem involving the Trefftz functions

机译:涉及Trefftz函数的非稳态逆热传递问题的数值解

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This paper shows the results concerning flow boiling heat transfer in an asymmetrically heated vertical minichannel. The heated element for FC-72 Fluorinert flowing in that minichannel was a thin foil. The foil surface temperature was monitored continuously at 18 points by K-type thermocouples from the outer foil surface. Fluid temperature and pressure in the minichannel inlet and outlet, current supplied to the foil and voltage drop were also monitored. Measurements were carried out at 1 s intervals. The objective was to determine the heat transfer coefficient on the heated foil–fluid contact surface in the minichannel. It was obtained from the Robin boundary condition. The foil temperature was the result of solving the nonstationary two-dimensional inverse boundary problem in the heated foil. Using the FEM combined with Trefftz functions as basis functions solved the problem. The unknown temperature values at nodes were calculated by minimising the adequate functional. The values of local heat transfer coefficients were consistent with the results obtained by the authors in their previous studies when steady-state conditions were analysed. This time, however, these values were analysed as time dependent, which facilitated observation of coefficient changes that were impossible to observe under the steady-state conditions.
机译:本文显示了有关在不对称加热的垂直小通道中流动沸腾传热的结果。在该微型通道中流动的用于FC-72氟惰性气体的加热元件是薄箔。通过K型热电偶从箔的外表面连续18个点监测箔的表面温度。还监控了微通道入口和出口的流体温度和压力,供应给金属箔的电流以及压降。以1秒的间隔进行测量。目的是确定微型通道中加热的箔-流体接触表面上的传热系数。它是从罗宾边界条件获得的。箔片温度是解决加热箔片中的非平稳二维逆边界问题的结果。使用结合Trefftz函数的FEM作为基础函数可以解决该问题。通过最小化适当的功能来计算节点处的未知温度值。分析稳态条件时,局部传热系数的值与作者在先前研究中获得的结果一致。但是,这次,这些值被分析为时间依赖性,这有助于观察在稳态条件下无法观察到的系数变化。

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